If p(t) = 3t2 + 5t + 8 watts, find: w(t) for 0 < t < 8 seconds.
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If p(t) = 3t2 + 5t + 8 watts, find: w(t) for 0 < t < 8 seconds.
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- (Note that the a,b,c,d are branches)1. Measure and record the potential difference for the following branches. Be mindful of the algebraic sign. a-b a-c b-c c-d a-d b-d And using the measured potential difference values, compute for the algebraic sum of the potential difference for the following electrical loops. Indicate the equation with values as well. abca abdca acda abcda acbdai need the answer quicklyQ1: For the circuits shown in figures. If the temperature has changed from 25°C to 65°C. find AIc. Ic=1.5mA at 25°C. Vcc +20v 25°C 65°C 47k 33.9k 55 70 Ico InA 16nA 12knS VBE 0.6 0.5 S1.2k
- If an electrical circuit draws 100W + J100VAR from a sinusoidal source, then what would the circuit be? Explain why. a) a pure resistor circuit b) a series or parallel R-L circuit c) a series or parallel R-C circuit d) a series L-C circuitPlease provide a clear explanation and calculation for question ( ii ). Thank you.whats the wltage at Va? (Given 1000-j2.1414 teth Ve Va. Zth=D1000-2.1414 V=1 1 /a0.12° v SUKHZ. 90.12° %3D ob
- QNO2. find diz= I/I1 in the figore shown. 2221 n. IzTake eo=1.6×10-19JV, k=1.381×10-23JK Question 4 : A solar cell (photovoltaic cell) has an open circuit voltage value of 0.5 V with a reverse saturation current density of J0=1.9×10-9Am2. The temperature of the cell is 25℃, the load voltage is 0.55 V. The solar irradiation is 900 Wm2, determine (c) The power output of the cell per unit area considering this load voltage 0.55 V, and the current output density of (b), and (d) The efficiency of the solar cell.Take eo=1.6×10-19JV, k=1.381×10-23JK Question 4: A solar cell (photovoltaic cell) has an open circuit voltage value of 0.5 V with a reverse saturation current density of J0=1.9×10-9Am2. The temperature of the cell is 25℃, the load voltage is 0.55 V. The solar irradiation is 900 Wm2, determine (a) The current output density, Js. (b) The current output density, Js if we were to find the maximum power condition at the load voltage. (c) The power output of the cell per unit area considering this load voltage 0.55 V, and the current output density of (b), and (d) The efficiency of the solar cell.